Vibration damping assembly and air conditioner outdoor unit having the same
By adjusting the position and distance between the mounting base and the air compressor, and combining this with a buffer to absorb vibration energy, the vibration and noise problems of the air compressor were solved, thereby improving the stability of the air conditioning system and enhancing the user experience.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- GREE ELECTRIC APPLIANCE INC OF ZHUHAI
- Filing Date
- 2025-07-30
- Publication Date
- 2026-07-21
AI Technical Summary
The air compressor in the oxygen generation module of the existing air conditioning system suffers from vibration and noise problems due to the asynchronous operation of the dual-cylinder structure, which affects the system stability and user experience.
Design a vibration damping component that balances the center of gravity by adjusting the position and distance between the mounting base and the running parts, uses buffer and locking components to absorb vibration energy, and optimizes the installation structure to adapt to different models of air compressors.
It significantly reduces the vibration amplitude of the air compressor during operation, improves equipment stability and service life, and enhances user experience and air conditioning system performance.
Smart Images

Figure CN224534386U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of air conditioner vibration reduction structure technology, specifically to a vibration reduction component and an air conditioner outdoor unit having the same. Background Technology
[0002] Currently, in the home appliance sector, especially in air conditioning equipment, oxygen generation functionality is increasingly valued by consumers. To generate oxygen, air conditioning units are often equipped with dedicated oxygen generation modules to achieve this function.
[0003] However, existing oxygen generation modules typically include an air compressor, which often vibrates during operation, resulting in significant noise. This is especially true for twin-cylinder air compressors, whose asynchronous operation due to their twin-cylinder structure easily generates unbalanced torque, leading to substantial vibration. This negatively impacts the stability of the air conditioning system and the user experience. Utility Model Content
[0004] The main objective of this invention is to provide a vibration damping component and an outdoor air conditioning unit having the same, so as to solve the technical problem that the operating components with movable operating structures in the prior art are prone to vibration.
[0005] To achieve the above objectives, according to one aspect of the present invention, a vibration damping component is provided, comprising:
[0006] An operating component, at least a portion of which is movably disposed;
[0007] The first mounting base and the second mounting base are both used to connect to the running component. The first mounting base has a first mounting portion extending out of one side of the running component, and the second mounting base has a second mounting portion extending out of the other side of the running component.
[0008] The first mounting part and the second mounting part have a mounting symmetry center line, and the distance between the mounting symmetry center line and the center line of gravity of the running component is d, 0≤d≤20mm.
[0009] Furthermore, both the first mounting base and the second mounting base have a connected state connected to the operating component and an active state that is adjustable relative to the position of the operating component; when both the first mounting base and the second mounting base are in the active state, the distance by which the first mounting part extends out of one side of the operating component and the distance by which the second mounting part extends out of the other side of the operating component are respectively adjusted.
[0010] Furthermore, the first mounting base is detachably disposed on one side of the operating component; and / or,
[0011] The second mounting base is detachably disposed on the other side of the operating component; and / or,
[0012] At least one of the first mounting base and the second mounting base is connected to the running component by fasteners.
[0013] Furthermore, the first mounting base includes a first connecting portion connected to the first mounting part, and the second mounting base includes a second connecting portion connected to the second mounting part. Both the first connecting portion and the second connecting portion are connected to the bottom of the operating component, and the distance between the first connecting portion and the second connecting portion is adjustable.
[0014] Furthermore, the first mounting portion is positioned higher than the first connecting portion; and / or,
[0015] The second mounting portion is positioned higher than the second connecting portion; and / or,
[0016] The first mounting portion comprises at least two parts, and the at least two first mounting portions are spaced apart along a preset direction; and / or,
[0017] The second mounting part is at least two, and the at least two second mounting parts are arranged at intervals along a preset direction.
[0018] Furthermore, the bottom of the running component is used to connect with the first mounting base and the second mounting base, the maximum distance between the tops of the running components is the installation height of the running component, the running component also has an installation width and an installation length, and the extension directions of the installation width, the extension direction of the installation length and the extension direction of the installation height are arranged perpendicular to each other.
[0019] Wherein, the installation height is less than the installation width, and the installation height is less than the installation length.
[0020] Furthermore, the vibration damping component also includes:
[0021] The support base, the first fastening part, and the second fastening part are spaced apart on the support base;
[0022] The first buffer is sleeved on the first fastening part, and the first mounting part is mounted on the end of the first buffer away from the support base and is movably sleeved on the first fastening part along the extension direction of the first fastening part.
[0023] The second buffer is fitted onto the second fastening part, and the second mounting part is mounted on the end of the second buffer away from the support base and is movably fitted onto the second fastening part along the extending direction of the second fastening part.
[0024] Furthermore, the vibration damping component also includes:
[0025] The first locking part is locked to the first fastening part, and the first locking part is located on the side of the first mounting part away from the first buffer member;
[0026] The second locking part is locked to the second fastening part, and the second locking part is located on the side of the second mounting part away from the second buffer member;
[0027] At least one of the first buffer and the second buffer is a buffer pad.
[0028] Further, the first locking portion has a first side and a second side disposed opposite to each other, the first side being the side of the first locking portion closer to the first buffer member, the first buffer member having a third side and a fourth side disposed opposite to each other, the side of the first buffer member closer to the first locking portion being the third side, and a first preset distance L1, 0.5mm < L1 < 1.5mm, between the first side and the third side; and / or,
[0029] The second locking portion has a fifth side and a sixth side disposed opposite to each other, the side of the second locking portion closer to the second buffer member being the fifth side. The second buffer member has a seventh side and an eighth side disposed opposite to each other, the side of the second buffer member closer to the second locking portion being the seventh side. A second preset distance L2, 0.5mm < L2 < 1.5mm, exists between the fifth side and the seventh side.
[0030] The first mounting base has a first mounting surface for assembling the first buffer member, and the running component has a first fixing surface for assembling with the first mounting base. The first mounting surface is positioned higher than the first fixing surface and has a first height difference ΔH1, where ΔH1 ≥ 16 mm; and / or,
[0031] The second mounting base has a second mounting surface for assembling the second buffer member, and the running component has a second fixing surface for assembling with the second mounting base. The second mounting surface is set higher than the second fixing surface and has a second height difference △H2, where △H2≥16mm.
[0032] Furthermore, the vibration damping component also includes a first handle and a second handle, both of which are connected to the support base and located on opposite sides of the running component. The volume occupied by the first handle is smaller than that occupied by the second handle. The running component includes a protective shell and a running structure, the running structure being movably installed inside the protective shell.
[0033] Wherein, one side of the protective housing is the nozzle side for connecting the nozzle; and / or,
[0034] The distance between the running structure and one side of the protective shell is greater than the distance between the running structure and the other side of the protective shell, and the weight of the first handle is less than the weight of the second handle.
[0035] Furthermore, the operating component is an air compressor; and / or,
[0036] The operating component includes a protective housing and an operating structure, the operating structure being movably mounted on the protective housing.
[0037] According to another aspect of the present invention, an air conditioner outdoor unit is provided, comprising:
[0038] The vibration damping components provided above;
[0039] The outdoor unit housing, and the vibration damping component is disposed inside the outdoor unit housing.
[0040] By applying the technical solution of this utility model, the vibration damping component and the design of the outdoor air conditioning unit significantly improve the stability and vibration reduction effect of the air compressor during operation. By setting the distance between the first and second mounting bases within a corresponding range, the center of gravity of the operating components is effectively balanced, reducing vibration amplitude and extending the service life of the equipment. Simultaneously, the adjustable mounting design adapts to the installation requirements of different air compressor models, improving versatility. Furthermore, the differentiated design of the first and second handles not only considers operational convenience but also avoids impacting the air compressor piping, further optimizing the overall layout. In practical applications, this innovative solution provides an efficient and low-vibration operating environment for the oxygen module of the outdoor air conditioning unit, significantly improving the user experience. Attached Figure Description
[0041] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:
[0042] Figure 1 An exploded view of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0043] Figure 2 A front view of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0044] Figure 3 A top view of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0045] Figure 4 A bottom view of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0046] Figure 5 A left view of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0047] Figure 6 A right view of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0048] Figure 7 A partial dimensional diagram of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0049] Figure 8 A schematic diagram of the structure of a vibration damping assembly provided according to an embodiment of the present invention is shown;
[0050] Figure 9 A schematic diagram of the structure of an air conditioner outdoor unit with the top cover removed, according to an embodiment of the present invention, is shown from one perspective.
[0051] Figure 10 This diagram shows a structural schematic of an air conditioner outdoor unit provided according to an embodiment of the present invention with the top cover removed, from another perspective.
[0052] The above figures include the following reference numerals:
[0053] 10. Operating components;
[0054] 11. Protective outer casing;
[0055] 12. Operational structure;
[0056] 21. First mounting base;
[0057] 211. First Installation Department;
[0058] 212. First connecting part;
[0059] 22. Second mounting bracket;
[0060] 221. Second Installation Section;
[0061] 222. Second connecting part;
[0062] 30. Support base;
[0063] 41. First fastening part;
[0064] 42. Second fastening part;
[0065] 51. First buffer component;
[0066] 52. Second buffer component;
[0067] 61. First locking part;
[0068] 62. Second locking part;
[0069] 71. First handle;
[0070] 72. Second handle;
[0071] 80. Outdoor unit casing. Detailed Implementation
[0072] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0073] like Figures 1 to 8 As shown, an embodiment of the present invention provides a vibration damping component, which includes: a running component 10, a first mounting base 21, and a second mounting base 22. At least a portion of the running component 10 is movably disposed. Both the first mounting base 21 and the second mounting base 22 are used to connect to the running component 10. The first mounting base 21 has a first mounting portion 211 extending out of one side of the running component 10, and the second mounting base 22 has a second mounting portion 221 extending out of the other side of the running component 10. The first mounting portion 211 and the second mounting portion 221 have a mounting symmetry center line S1, and the distance between the mounting symmetry center line S1 and the center line S2 of the running component 10 is d, where 0 ≤ d ≤ 20 mm.
[0074] By using the vibration damping component provided in this embodiment, and setting the distance between the installation symmetry center line S1 and the center of gravity line S2 of the running component 10 within the aforementioned range, the center of gravity line S2 of the running component 10 can be made as close as possible to the installation symmetry center line S1, thereby reducing vibration during operation. The effect is a significant reduction in the vibration amplitude of the running component 10 during operation, improving equipment stability and extending its service life. The main application scenario is in equipment requiring vibration damping, such as the air compressor of an air conditioner outdoor unit. This vibration damping component can effectively reduce the vibration impact of the air compressor on the outdoor unit casing during operation, improving the overall performance of the air conditioning system. Specifically, the center of gravity line S2 is a line passing through the center of gravity of the running component 10 and parallel to the installation symmetry center line S1.
[0075] Specifically, the operating component 10 can be an air compressor.
[0076] Specifically, the operating component 10 includes a protective housing 11 and an operating structure 12, the operating structure 12 being movably mounted on the protective housing 11. Preferably, the operating structure 12 is movably mounted inside the protective housing 11.
[0077] Specifically, both the first mounting base 21 and the second mounting base 22 have a connected state to the operating component 10 and an adjustable active state relative to the operating component 10. When both the first mounting base 21 and the second mounting base 22 are in the active state, the distance by which the first mounting part 211 extends beyond one side of the operating component 10 and the distance by which the second mounting part 221 extends beyond the other side of the operating component 10 are adjusted, respectively. With this structural arrangement, by adjusting the positions of the first mounting base 21 and the second mounting base 22, the center of gravity of the operating component 10 is made as close as possible to the mounting symmetry center line, thereby reducing vibration during operation.
[0078] Specifically, the first mounting base 21 is detachably disposed on one side of the operating component 10; and / or, the second mounting base 22 is detachably disposed on the other side of the operating component 10; and / or, at least one of the first mounting base 21 and the second mounting base 22 is connected to the operating component 10 via the fastener. This detachable design facilitates convenient position adjustment when needed, and ensures stable fixation and limiting of the operating component 10 when it needs to be secured.
[0079] Specifically, the protective housing 11 forms the outer edge of the operating component 10. Correspondingly, the first mounting base 21 is detachably disposed on one side of the protective housing 11; and / or, the second mounting base 22 is detachably disposed on the other side of the protective housing 11; and / or, at least one of the first mounting base 21 and the second mounting base 22 is connected to the protective housing 11 by fasteners of the operating component 10.
[0080] The design of the detachable mounting base and the fastener connection of the running component 10 makes the installation and maintenance of the vibration damping assembly more convenient. It facilitates easier adjustment of the positions of the first mounting base 21 and the second mounting base 22, thereby facilitating the adjustment of the distance from which the first mounting part 211 extends beyond one side of the protective housing 11 and the distance from which the second mounting part 221 extends beyond the other side of the protective housing 11. This allows for better adjustment of the distance between the installation symmetry center line and the center line of gravity of the running component 10 within the aforementioned range, thus ensuring a better vibration damping effect on the running component 10. Specifically, the detachable design of the first mounting base 21 facilitates adjustment of the distance from which the first mounting part 211 extends beyond one side of the protective housing 11, and the detachable design of the second mounting base 22 facilitates adjustment of the distance from which the second mounting part 221 extends beyond the other side of the protective housing 11. Furthermore, it facilitates the replacement and maintenance of the running component 10, while the fastener connection of the running component 10 simplifies the installation steps, reduces installation costs, and improves the installation stability of the running component 10. The implementation results in improved flexibility and reliability of the vibration damping components, reducing vibration problems caused by improper installation. Application scenarios include various equipment requiring frequent disassembly or maintenance, such as household appliances, especially in air conditioner outdoor units, where this design can greatly simplify the installation and maintenance process of air compressors.
[0081] Furthermore, by connecting at least one of the first mounting base 21 and the second mounting base 22 to the protective housing 11 with fasteners, it is possible to reduce the number of fasteners and minimize the distance between the running component 10 and the support base 30, thereby reducing the probability of the running component 10 colliding with the support base 30 during operation and improving the operational stability of the running component 10.
[0082] In this embodiment, the first mounting base 21 includes a first connecting portion 212 connected to the first mounting portion 211, and the second mounting base 22 includes a second connecting portion 222 connected to the second mounting portion 221. Both the first connecting portion 212 and the second connecting portion 222 are connected to the bottom of the running component 10, and the distance between the first connecting portion 212 and the second connecting portion 222 is adjustable.
[0083] In this way, by adjusting the distance between the first connecting part 212 and the second connecting part 222, different sizes of operating components 10 can be accommodated, ensuring that the center of gravity of the operating component 10 matches the installation symmetry center line. The effect is improved versatility and adaptability of the vibration damping assembly, enabling its application to various sizes of air compressors or other operating components 10. Application scenarios include situations requiring the installation of multiple specifications of operating components 10, such as the assembly of outdoor units on air conditioning production lines. This design can significantly reduce installation difficulties caused by differences in equipment size, thereby improving production efficiency.
[0084] Specifically, "the first connecting part 212 and the second connecting part 222 are both connected to the bottom of the operating component 10" can be understood as the first connecting part 212 and the second connecting part 222 being connected to the bottom of the protective shell 11.
[0085] Specifically, the first mounting portion 211 is positioned higher than the first connecting portion 212; and / or, the second mounting portion 221 is positioned higher than the second connecting portion 222; and / or, there are at least two first mounting portions 211, which are spaced apart along a preset direction; and / or, there are at least two second mounting portions 221, which are spaced apart along a preset direction. By increasing the height of the first mounting portion 211 and the second mounting portion 221 relative to the first connecting portion 212 and the second connecting portion 222, and by providing multiple mounting portions, the weight and vibration of the running component 10 are distributed, thereby improving the vibration reduction effect. The implementation effect is that the vibration of the running component 10 is more uniform during operation, reducing excessive local vibration and improving the overall stability of the equipment. The application scenario is in equipment requiring high-precision vibration reduction, such as air conditioner outdoor units, where this design can effectively reduce the impact of the vibration of the running component 10 on the equipment performance.
[0086] In this embodiment, the bottom of the running component 10 is used to connect with the first mounting base 21 and the second mounting base 22. The maximum distance between the tops of the running component 10 and the top of the running component 10 is the installation height of the running component 10. The running component 10 also has an installation width and an installation length, and the extension directions of the installation width, the installation length, and the installation height are mutually perpendicular. The installation height is less than the installation width, and the installation length is less than the installation length. By limiting the installation height of the running component 10 to be less than the installation width and installation length, the vibration of the running component 10 in the height direction is reduced, while ensuring its stability in the width and length directions. This installation method corresponds to a horizontal installation method. The effect is that the vibration of the running component 10 during operation is mainly concentrated in the width and length directions, reducing vibration in the height direction and improving the operational stability of the equipment. The application scenario is in space-constrained equipment, such as air conditioner outdoor units. This design can achieve good vibration reduction within a limited space without affecting other functions of the equipment.
[0087] In this embodiment, the vibration damping assembly further includes: a support base 30, a first fastening part 41, a second fastening part 42, a first buffer member 51, and a second buffer member 52. The first fastening part 41 and the second fastening part 42 are spaced apart on the support base 30. The first buffer member 51 is sleeved on the first fastening part 41. The first mounting part 211 is mounted on the end of the first buffer member 51 away from the support base 30 and is movably sleeved on the first fastening part 41 along the extending direction of the first fastening part 41. The second buffer member 52 is disposed on the second fastening part 42. The second mounting part 221 is mounted on the end of the second buffer member 52 away from the support base 30 and is movably sleeved on the second fastening part 42 along the extending direction of the second fastening part 42.
[0088] This structural design absorbs the vibration energy of the operating component 10 through the first buffer 51 and the second buffer 52, while allowing the first mounting portion 211 and the second mounting portion 221 to be fine-tuned on the first fastening portion 41 and the second fastening portion 42 to accommodate minor vibrations of the operating component 10. The effect is that the vibration energy of the operating component 10 during operation is effectively absorbed, reducing the possibility of vibration transmission to other parts of the equipment and improving the overall vibration reduction effect. Application scenarios include equipment requiring high vibration reduction performance, such as the air compressor of an outdoor air conditioning unit. This design can effectively reduce the vibration of the air compressor during operation, improving the operating efficiency and comfort of the air conditioning system.
[0089] Specifically, both the first fastening part 41 and the second fastening part 42 can be fastening bolts.
[0090] Specifically, the vibration damping assembly further includes: a first locking part 61 and a second locking part 62. The first locking part 61 is locked to the first fastening part 41 and is disposed on the side of the first mounting part 211 away from the first buffer member 51. The second locking part 62 is locked to the second fastening part 42 and is disposed on the side of the second mounting part 221 away from the second buffer member 52. At least one of the first buffer member 51 and the second buffer member 52 is a cushioning rubber pad.
[0091] The first and second buffer components 51 and 52 are fixed by the first locking part 61 and the second locking part 62, ensuring their stability and vibration reduction effect during the operation of the running component 10. The effect is that the vibration of the running component 10 during operation can be effectively absorbed by the first and second buffer components 51 and 52, while the first and second locking parts 61 and 62 ensure the fixation of the buffer components, improving the reliability and durability of the vibration damping assembly. This design is applicable to equipment requiring long-term stable operation, such as air conditioner outdoor units, ensuring the vibration reduction effect of the air compressor during long-term operation, reducing equipment failure rate, and extending equipment life.
[0092] Specifically, the first locking part 61 and the second locking part 62 can be a fixing nut that is threaded into the fastening bolt.
[0093] Specifically, there is a first preset distance L1 between the side of the first locking part 61 near the first buffer member 51 and the side of the first buffer member 51 near the first locking part 61, where 0.5mm < L1 < 1.5mm; and / or, there is a second preset distance L2 between the side of the second locking part 62 near the second buffer member 52 and the side of the second buffer member 52 near the second locking part 62, where 0.5mm < L2 < 1.5mm; and / or, the assembly plane of the first mounting base 21 and the first buffer member 51 is higher than the first fixing surface of the protective shell 11 for assembly with the first mounting base 21 and has a first height difference △H1, where △H1 ≥ 16mm; and / or, the assembly plane of the second mounting base 22 and the second buffer member 52 is higher than the second fixing surface of the protective shell 11 for assembly with the second mounting base 22 and has a second height difference △H2, where △H2 ≥ 16mm.
[0094] Correspondingly, the above scheme can be understood as follows: the first locking part 61 has a first side and a second side arranged opposite to each other, the first side being the side of the first locking part 61 near the first buffer member 51, the first buffer member 51 has a third side and a fourth side arranged opposite to each other, the side of the first buffer member 51 near the first locking part 61 being the third side, and a first preset distance L1, 0.5mm < L1 < 1.5mm, is provided between the first side and the third side; and / or, the second locking part 62 has a fifth side and a sixth side arranged opposite to each other, the side of the second locking part 62 near the second buffer member 52 being the fifth side, the second buffer member 52 has a seventh side and an eighth side arranged opposite to each other, the side of the second buffer member 52 near the second locking part 62 being the fifth side, and a first preset distance L1, 0.5mm < L1 < 1.5mm, is provided between the first side and the third side; and / or, the second locking part 62 has a fifth side and a sixth side arranged opposite to each other, the side of the second locking part 62 near the second buffer member 52 being the fifth side, and a seventh side and an eighth side, the side of the second buffer member 52 near the second locking part 62 being the fifth side; and / or, the second locking part 62 has a fifth side and a sixth side arranged opposite to each other, the side of the second locking part 62 near the second locking part 62 being the fifth side, and a first preset distance L1, 0.5mm < L1 < 1.5mm, is provided between the first side and the third side; and / or, the second locking part 62 has a fifth side and a sixth side arranged opposite to each other, the side of the second locking part 62 near the second buffer member 52 being the fifth side, and a first preset distance L1, 0.5mm < L1 < 1.5mm, is provided between the first side and the third side; and / or, The fifth side is the seventh side, and the seventh side has a second preset distance L2 between it and the fifth side, where 0.5mm < L2 < 1.5mm; and / or, the first mounting base 21 has a first mounting plane for assembling the first buffer 51, and the running component 10 has a first fixing surface for assembling with the first mounting base 21, wherein the first mounting plane is higher than the first fixing surface and has a first height difference △H1, where △H1 ≥ 16mm; and / or, the second mounting base 22 has a second mounting plane for assembling the second buffer 52, and the running component 10 has a second fixing surface for assembling with the second mounting base 22, wherein the second mounting plane is higher than the second fixing surface and has a second height difference △H2, where △H2 ≥ 16mm.
[0095] By setting a first preset spacing L1 and a first height difference ΔH1, as well as a second preset spacing L1 and a second height difference ΔH2, the contact between the first locking part 61, the second locking part 62 and the first buffer member 51, the second buffer member 52, and the relative positions between the first mounting base 21, the second mounting base 22 and the protective shell 11 are optimized to achieve the best vibration reduction effect. The implementation effect is that the vibration of the operating component 10 during operation can be more effectively absorbed and dispersed, improving the vibration reduction efficiency of the vibration damping assembly and the operational stability of the equipment. The application scenario is in equipment requiring precise vibration control, such as air conditioning outdoor units. This design can ensure the vibration reduction effect of the air compressor under various operating conditions, improving the comfort and energy efficiency of the air conditioning system.
[0096] Specifically, the vibration damping assembly further includes a first handle 71 and a second handle 72. Both the first handle 71 and the second handle 72 are connected to the support base 30 and are located on opposite sides of the protective housing 11. The volume occupied by the first handle 71 is smaller than that occupied by the second handle 72. One side of the protective housing 11 is a pipe-connecting side; and / or, the distance between the operating structure 12 and one side of the protective housing 11 is greater than the distance between the operating structure 12 and the other side of the protective housing 11. The weight of the first handle 71 is less than the weight of the second handle 72.
[0097] By employing the above structure and incorporating first handles 71 and second handles 72 of varying sizes, the weight distribution and operational requirements of the operating component 10 are accommodated, while simultaneously avoiding interference with the piping side. The implementation improves the convenience for operators during the installation and maintenance of the operating component 10 and reduces the risk of damage due to improper operation. This design is applicable to equipment requiring frequent operation and maintenance, such as air compressors in outdoor air conditioning units, significantly simplifying the installation and maintenance process and improving work efficiency.
[0098] Preferably, the running component 10 is an air compressor. The principle of this design is to design dedicated vibration damping components to address the specific operating characteristics and vibration modes of the air compressor, achieving optimal vibration reduction. The result is more stable operation of the air compressor in the air conditioning system, lower vibration and noise, and improved overall system performance and user experience. Application scenarios include air conditioning systems requiring high-efficiency, low-vibration air compressors, such as commercial and residential air conditioning systems. This design can effectively improve the operating efficiency and comfort of the air conditioning system.
[0099] Specifically, the operating component 10 in this embodiment can be a single-cylinder compressor or a double-cylinder compressor.
[0100] Taking advantage of the small installation space of the oxygen-generating air conditioner, the air compressor is installed on its side, and the vibration of the air compressor during operation is reduced through the design and layout of the air compressor's center of gravity and the base vibration damping pads.
[0101] like Figure 1The image shown is an exploded view of the vibration damping component designed in this patent, including a running component 10, a first handle 71, a second handle 72, a support base 30, a first buffer component 51, and a second buffer component 52. The support base 30 is positioned and fixed to other components using fastening connectors; a fastening bolt is fixed to the support base 30; a buffer pad is fitted onto the fastening bolt; the upper part of the buffer pad is assembled with the first mounting base 21 and the second mounting base 22 designed at both ends of the air compressor; a fixing nut is fitted onto the upper end of the fastening bolt, maintaining a certain distance L (1.5mm > L > 0.5mm) from the upper surface of the foot pad, ensuring stable operation of the air compressor and optimal vibration damping effect. The first mounting base 21 and the second mounting base 22 adopt a split design to avoid abnormal torsional vibration caused by asynchronous operation of the two compressors. Furthermore, the mounting planes of the first mounting base 21 and the second mounting base 22 with the buffer pads are higher than the fixed surface of the air compressor, with a height difference △H≥16mm. This reduces the height difference between the center of gravity of the air compressor and the effective action surface of the vibration damping structure, thereby reducing the vibration amplitude of the air compressor during operation. The mounting positions of the first mounting base 21 and the second mounting base 22 with the vibration damping pads are extended in the length direction, which can effectively reduce the installation size of the air compressor in the width direction, thus meeting the requirements for horizontal small-size installation of air conditioner outdoor units. Based on the weight distribution of the air compressor, i.e., the left side is lighter (corresponding to one side of the air compressor being lighter) and the right side is heavier (corresponding to the other side of the air compressor being heavier), handles are designed for each side. The first handle 71 (left handle) is small in size and does not affect the air compressor connection pipe. This handle is directly designed on the left side of the air compressor base. The second handle 72 (right handle) is heavy and has a large design size to meet the requirements of one-handed operation. It is designed as a separate handle structure and is fixed to the air compressor base with screws.
[0102] like Figure 2 As shown, the first mounting base 21 (also known as the left base) is secured by four fastening bolts on the air compressor end cover. This reduces the number of fasteners and decreases the distance between the left end face and the base, thereby reducing the probability of the air compressor colliding with the base during operation and improving the stability of the air compressor. The second mounting base 22 (right base) utilizes the original base structure of the air compressor for fastening, effectively reducing the overall cost of the machine.
[0103] like Figure 9 and Figure 10As shown, Embodiment 2 of this utility model provides an outdoor unit for an air conditioner, including the vibration damping component described in any of the above-mentioned embodiments; an outdoor unit housing 80, with the vibration damping component disposed within the outdoor unit housing 80. The principle of this design is to integrate the aforementioned vibration damping component into the outdoor unit for the air conditioner, thereby reducing the vibration impact on the outdoor unit housing during air compressor operation. The implementation effect is a significant reduction in vibration and noise of the outdoor unit during operation, improving the overall stability of the air conditioning system and the user experience. The application scenario is in environments sensitive to vibration and noise, such as residential areas and office areas, where this design can effectively reduce the impact of air conditioner operation on the external environment, improving the comfort of living and working.
[0104] From the above description, it can be seen that the above embodiments of this utility model achieve the following technical effects: Optimizing the structural form of the first and second mounting seats, adjusting the positional relationship between the installation symmetry center line and the air compressor's center of gravity line, and reducing air compressor vibration. By rationally arranging and fixing the air compressor, the rigidity of the base is enhanced, reducing air compressor operating vibration. Using air compressor bolts, the cantilever of the first mounting seat of the air compressor is adjusted, achieving air compressor installation with a small size. The air compressor adopts a horizontal installation, with a support base at the bottom. The support base is designed with a small first handle (located on the left side), and the second handle (located on the right side) is a large, separately designed part, facilitating one-handed operation. The first and second mounting seats adopt a split design to avoid abnormal torsional vibration caused by asynchronous operation of the two rods; and the assembly plane of the first mounting seat and the first buffer component is higher than the fixed surface of the air compressor, and the assembly plane of the second mounting seat and the second buffer component is higher than the fixed surface of the air compressor, with a height difference △H≥16mm.
[0105] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0106] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.
[0107] In the description of this application, it should be understood that the orientation or positional relationship indicated by directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" is usually based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this application; the directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.
[0108] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0109] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this application.
[0110] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A vibration damping component, characterized in that, include: An operating component (10), at least a portion of which is movably disposed; The first mounting base (21) and the second mounting base (22) are both used to connect to the running component (10). The first mounting base (21) has a first mounting portion (211) extending out of one side of the running component (10), and the second mounting base (22) has a second mounting portion (221) extending out of the other side of the running component (10). The first mounting part (211) and the second mounting part (221) have a mounting symmetry center line, and the distance between the mounting symmetry center line and the center line of gravity of the running component (10) is d, 0≤d≤20mm.
2. The vibration damping component according to claim 1, characterized in that, Both the first mounting base (21) and the second mounting base (22) have a connected state connected to the operating component (10) and an active state in which their positions are respectively adjustable relative to the operating component (10); when both the first mounting base (21) and the second mounting base (22) are in the active state, the distance by which the first mounting part (211) extends out of one side of the operating component (10) and the distance by which the second mounting part (221) extends out of the other side of the operating component (10) are respectively adjusted.
3. The vibration damping component according to claim 1, characterized in that, The first mounting base (21) is detachably disposed on one side of the operating component (10); and / or, The second mounting base (22) is detachably disposed on the other side of the operating component (10); and / or, At least one of the first mounting base (21) and the second mounting base (22) is connected to the running component (10) by a fastener.
4. The vibration damping component according to claim 1, characterized in that, The first mounting base (21) includes a first connecting portion (212) connected to the first mounting part (211), and the second mounting base (22) includes a second connecting portion (222) connected to the second mounting part (221). Both the first connecting portion (212) and the second connecting portion (222) are connected to the bottom of the running component (10), and the distance between the first connecting portion (212) and the second connecting portion (222) is adjustable.
5. The vibration damping component according to claim 4, characterized in that, The first mounting portion (211) is positioned higher than the first connecting portion (212); and / or, The second mounting portion (221) is positioned higher than the second connecting portion (222); and / or, The first mounting portion (211) is at least two, and the at least two first mounting portions (211) are spaced apart along a preset direction; and / or, There are at least two second mounting parts (221), and at least two second mounting parts (221) are spaced apart along a preset direction.
6. The vibration damping component according to claim 1, characterized in that, The bottom of the running component (10) is used to connect with the first mounting base (21) and the second mounting base (22). The maximum distance between the top of the running component (10) and the top of the running component (10) is the installation height of the running component (10). The running component (10) also has an installation width and an installation length. The extension direction of the installation width, the extension direction of the installation length and the extension direction of the installation height are perpendicular to each other. Wherein, the installation height is less than the installation width, and the installation height is less than the installation length.
7. The vibration damping component according to claim 1, characterized in that, The vibration damping component also includes: The support base (30), the first fastening part (41) and the second fastening part (42) are spaced apart on the support base (30); The first buffer (51) is sleeved on the first fastening part (41), and the first mounting part (211) is mounted on the end of the first buffer (51) away from the support base (30) and is movably sleeved on the first fastening part (41) along the extending direction of the first fastening part (41). The second buffer (52) is sleeved on the second fastening part (42), and the second mounting part (221) is mounted on the end of the second buffer (52) away from the support base (30) and is movably sleeved on the second fastening part (42) along the extension direction of the second fastening part (42).
8. The vibration damping component according to claim 7, characterized in that, The vibration damping component also includes: The first locking part (61) is locked to the first fastening part (41), and the first locking part (61) is disposed on the side of the first mounting part (211) away from the first buffer member (51); The second locking part (62) is locked to the second fastening part (42), and the second locking part (62) is provided on the side of the second mounting part (221) away from the second buffer member (52); Among them, at least one of the first buffer (51) and the second buffer (52) is a buffer pad.
9. The vibration damping component according to claim 8, characterized in that, The first locking part (61) has a first side and a second side disposed opposite to each other. The first side is the side of the first locking part (61) closer to the first buffer member (51). The first buffer member (51) has a third side and a fourth side disposed opposite to each other. The side of the first buffer member (51) closer to the first locking part (61) is the third side. A first preset distance L1, 0.5mm < L1 < 1.5mm, is provided between the first side and the third side. The second locking part (62) has a fifth side and a sixth side disposed opposite to each other, the side of the second locking part (62) near the second buffer member (52) being the fifth side, the second buffer member (52) having a seventh side and an eighth side disposed opposite to each other, the side of the second buffer member (52) near the second locking part (62) being the seventh side, and a second preset distance L2 between the fifth side and the seventh side, 0.5mm < L2 < 1.5mm; and / or, The first mounting base (21) has a first mounting surface for assembling the first buffer member (51), and the running component (10) has a first fixing surface for assembling with the first mounting base (21). The first mounting surface is set higher than the first fixing surface and has a first height difference ΔH1, where ΔH1 ≥ 16 mm; and / or, The second mounting base (22) has a second mounting surface for assembling the second buffer (52), and the running component (10) has a second fixing surface for assembling with the second mounting base (22). The second mounting surface is set higher than the second fixing surface and has a second height difference △H2, △H2≥16mm.
10. The vibration damping component according to claim 7, characterized in that, The vibration damping assembly also includes a first handle (71) and a second handle (72), both of which are connected to the support base (30) and located on both sides of the running component (10). The volume occupied by the first handle (71) is smaller than that occupied by the second handle (72). The running component (10) includes a protective shell (11) and a running structure (12), which is movably installed inside the protective shell (11). Wherein, one side of the protective housing (11) is the pipe-connecting side; and / or, The distance between one side of the operating structure (12) and the protective shell (11) is greater than the distance between the other side of the operating structure (12) and the protective shell (11), and the weight of the first handle (71) is less than the weight of the second handle (72).
11. The vibration damping component according to any one of claims 1 to 9, characterized in that, The operating component (10) is an air compressor; and / or, The operating component (10) includes a protective housing (11) and an operating structure (12), the operating structure (12) being movably mounted on the protective housing (11).
12. An outdoor unit for an air conditioner, characterized in that, include: The vibration damping component according to any one of claims 1 to 11; Outdoor unit housing (80), the vibration damping component is disposed inside the outdoor unit housing (80).